Because of the cintrifugal force caused by the the earth's rotation
The width of the ocean generally increases from the equator towards the poles in the southern hemisphere. This is because the Earth is not a perfect sphere, but rather an oblate spheroid, which causes the circumference to be larger near the poles than at the equator.
Lines of longitude are further apart at the equator than at the poles. This is because the Earth's circumference is greatest at the equator, causing the lines of longitude to be spaced farther apart to cover the same distance around the Earth.
Yes, the speed of rotation at the equator is faster than in Canada due to the larger circumference of the Earth at the equator. This difference in rotational speed is caused by the flattening of the Earth's shape at the poles, known as oblateness.
On our Earth, the Equator is comparatively warmer than either of the Poles.
No, centrifugal force is greater at the poles than at the equator because the Earth's rotation causes a bulging effect at the equator that counteracts the centrifugal force. This is why objects weigh slightly less at the equator compared to the poles.
The Earth is not a perfect sphere but an oblate spheroid, meaning it is slightly flattened at the poles and bulging at the equator due to its rotation. This oblate shape causes the circumference around the equator to be larger than around the poles.
The width of the ocean generally increases from the equator towards the poles in the southern hemisphere. This is because the Earth is not a perfect sphere, but rather an oblate spheroid, which causes the circumference to be larger near the poles than at the equator.
The circumference of Mars at the poles is around 21,297 kilometers, which is slightly smaller than the circumference at the equator. This is because Mars has an oblate shape, with a bulge around the equator due to its rotation.
The equator has a slightly larger circumference than the north south measurement.
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Lines of longitude are further apart at the equator than at the poles. This is because the Earth's circumference is greatest at the equator, causing the lines of longitude to be spaced farther apart to cover the same distance around the Earth.
Yes, the speed of rotation at the equator is faster than in Canada due to the larger circumference of the Earth at the equator. This difference in rotational speed is caused by the flattening of the Earth's shape at the poles, known as oblateness.
The difference between the Earth's polar circumference and equatorial circumference, known as the flattening of the Earth, indicates that the Earth is an oblate spheroid. This means that the Earth is slightly flattened at the poles and bulges at the equator, making it not a perfect sphere.
On our Earth, the Equator is comparatively warmer than either of the Poles.
No, centrifugal force is greater at the poles than at the equator because the Earth's rotation causes a bulging effect at the equator that counteracts the centrifugal force. This is why objects weigh slightly less at the equator compared to the poles.
Yes, air near the equator is typically warmer than air near the poles due to the angle at which sunlight strikes the earth. Near the equator, sunlight is more concentrated, resulting in higher temperatures. In contrast, near the poles, sunlight is spread out over a larger area, leading to cooler temperatures.
The energy that reaches the equator is more intense than the energy that strikes poles